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Surfactant effects on α-factors in aeration systems

机译:表面活性剂对曝气系统中α因子的影响

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Aeration in wastewater treatment processes accounts for the largest fraction of plant energy costs. Aeration systems function by shearing the surface (surface aerators) or releasing bubbles at the bottom of the tank (coarse- or fine-bubble aerators). Surfactant accumulation on gas-liquid interfaces reduces mass transfer rates, and this reduction in general is larger for fine-bubble aerators. This study evaluates mass transfer effects on the characterization and specification of aeration systems in clean and process water conditions. Tests at different interfacial turbulence regimes show higher gas transfer depression for lower turbulence regimes. Contamination effects can be offset at the expense of operating efficiency, which is characteristic of surface aerators and coarse-bubble diffusers. Results describe the variability of α-factors measured at small scale, due to uncontrolled energy density. Results are also reported in dimensionless empirical correlations describing mass transfer as a function of physiochemical and geometrical characteristics of the aeration process.
机译:废水处理过程中的曝气占工厂能源成本的最大比例。曝气系统通过剪切表面(表面曝气器)或在罐底释放气泡(粗气泡或细气泡曝气器)来发挥作用。表面活性剂在气-液界面上的积累降低了传质速率,对于细气泡曝气器,这种降低通常更大。这项研究评估了传质对清洁和工艺用水条件下曝气系统表征和规格的影响。在不同的界面湍流状态下进行的测试表明,对于较低的湍流状态而言,较高的气体输送抑制比。污染效应可以以操作效率为代价来抵消,这是表面曝气器和粗气泡扩散器的特征。结果描述了由于无法控制的能量密度而在小范围内测量的α因子的变异性。结果也以无量纲的经验相关性进行了报道,这些相关性描述了传质与曝气过程的物理化学和几何特征的关系。

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